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本文引用的文献

1
NF-κB Immunity in the Brain Determines Fly Lifespan in Healthy Aging and Age-Related Neurodegeneration.大脑中的NF-κB免疫决定果蝇在健康衰老和与年龄相关的神经退行性变中的寿命。
Cell Rep. 2017 Apr 25;19(4):836-848. doi: 10.1016/j.celrep.2017.04.007.
2
Mitochondrial peroxiredoxins are essential in regulating the relationship between Drosophila immunity and aging.线粒体过氧化物酶对于调节果蝇免疫与衰老之间的关系是必不可少的。
Biochim Biophys Acta Mol Basis Dis. 2017 Jan;1863(1):68-80. doi: 10.1016/j.bbadis.2016.10.017. Epub 2016 Oct 19.
3
Drosophila mitochondrial topoisomerase III alpha affects the aging process via maintenance of mitochondrial function and genome integrity.果蝇线粒体拓扑异构酶IIIα通过维持线粒体功能和基因组完整性影响衰老过程。
J Biomed Sci. 2016 Apr 12;23:38. doi: 10.1186/s12929-016-0255-2.
4
The role of peroxiredoxin 4 in inflammatory response and aging.过氧化物还原酶4在炎症反应和衰老中的作用。
Biochim Biophys Acta. 2016 Feb;1862(2):265-73. doi: 10.1016/j.bbadis.2015.12.008. Epub 2015 Dec 9.
5
Apoptosis in Drosophila: which role for mitochondria?果蝇细胞凋亡:线粒体的作用?
Apoptosis. 2016 Mar;21(3):239-51. doi: 10.1007/s10495-015-1209-y.
6
Distinct Shifts in Microbiota Composition during Drosophila Aging Impair Intestinal Function and Drive Mortality.果蝇衰老过程中微生物群组成的明显变化会损害肠道功能并导致死亡。
Cell Rep. 2015 Sep 8;12(10):1656-67. doi: 10.1016/j.celrep.2015.08.004. Epub 2015 Aug 28.
7
Loss of Drosophila i-AAA protease, dYME1L, causes abnormal mitochondria and apoptotic degeneration.果蝇i-AAA蛋白酶dYME1L的缺失会导致线粒体异常和凋亡性退变。
Cell Death Differ. 2016 Feb;23(2):291-302. doi: 10.1038/cdd.2015.94. Epub 2015 Jul 10.
8
Exploring the physiology and pathology of aging in the intestine of .探索……肠道中衰老的生理和病理情况。 你提供的原文似乎不完整,句末缺少具体所指对象。
Invertebr Reprod Dev. 2015 Jan 30;59(sup1):51-58. doi: 10.1080/07924259.2014.963713. Epub 2014 Dec 9.
9
Sterile inflammation in Drosophila.果蝇中的无菌性炎症。
Mediators Inflamm. 2015;2015:369286. doi: 10.1155/2015/369286. Epub 2015 Apr 8.
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Age-associated loss of lamin-B leads to systemic inflammation and gut hyperplasia.衰老导致核层蛋白 B 的丢失会引起全身炎症和肠道过度增生。
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抗菌肽的过表达通过对果蝇组织的细胞毒性作用导致衰老。

Overexpression of antimicrobial peptides contributes to aging through cytotoxic effects in Drosophila tissues.

作者信息

Badinloo Marziyeh, Nguyen Elizabeth, Suh Winston, Alzahrani Faisal, Castellanos Jovelyn, Klichko Vladimir I, Orr William C, Radyuk Svetlana N

机构信息

Southern Methodist University, Dallas, Texas.

出版信息

Arch Insect Biochem Physiol. 2018 Aug;98(4):e21464. doi: 10.1002/arch.21464. Epub 2018 Apr 10.

DOI:10.1002/arch.21464
PMID:29637607
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6039247/
Abstract

The innate immune response tends to become hyperactive and proinflammatory in older organisms. We investigated connections between activity of the immune-related genes and aging using the Drosophila model. A hallmark of Drosophila immunity is the production of antimicrobial peptides (AMP), whose expression is triggered via activation of the Toll and Imd immune pathways and regulated by NF-ĸB-like transcription factors, Dif/Dorsal and Relish. It was previously shown that overexpression of the upstream component of the immune pathways shortens lifespan via activation of the Relish-dependent immune response. Here we show that direct overexpression of the Relish target AMP genes broadly at high levels or in the fat body induced apoptosis, elicited depolarization of the mitochondria and significantly shortened lifespan. Underexpression of Relish in the fat body beginning in the second half of lifespan prevented overactivation of AMPs and extended longevity. Unlike infection-induced responses, the age-related increase in AMPs does not require the upstream recognition/transduction module of the Imd pathway. It does however require downstream elements, including Relish and Ird5, a component of the downstream IKK complex. Together, these results established causal links between high-level production of antimicrobial peptides and longevity.

摘要

在衰老生物体中,先天性免疫反应往往会变得过度活跃并具有促炎作用。我们使用果蝇模型研究了免疫相关基因的活性与衰老之间的联系。果蝇免疫的一个标志是抗菌肽(AMP)的产生,其表达通过Toll和Imd免疫途径的激活而触发,并由NF-κB样转录因子Dif/Dorsal和Relish调节。先前的研究表明,免疫途径上游成分的过表达会通过激活依赖Relish的免疫反应缩短寿命。在这里,我们表明,Relish靶标AMP基因在高水平广泛地直接过表达或在脂肪体中过表达会诱导细胞凋亡,引发线粒体去极化并显著缩短寿命。从寿命后半期开始,脂肪体中Relish的低表达可防止AMPs过度激活并延长寿命。与感染诱导的反应不同,与年龄相关的AMPs增加不需要Imd途径的上游识别/转导模块。然而,它确实需要下游元件,包括Relish和Ird5,后者是下游IKK复合物的一个组成部分。总之,这些结果建立了抗菌肽的高水平产生与寿命之间的因果联系。